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首页> 外文期刊>Analytical chemistry >Quantitative Evaluation on Activated Property-Tunable Bulk Liquid Water with Reduced Hydrogen Bonds Using Deconvoluted Raman Spectroscopy
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Quantitative Evaluation on Activated Property-Tunable Bulk Liquid Water with Reduced Hydrogen Bonds Using Deconvoluted Raman Spectroscopy

机译:用去卷积拉曼光谱法定量评估具有减氢键的活化特性可调的散装液态水

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Interesting properties of water with distinguishable hydrogen-bonding structure on interfacial phase or in confined environment have drawn wide attentions. However, these unique properties of water are only found within the interfacial phase and confined environment, thus, their applications are limited. In addition, quantitative evaluation on these unique properties associating with the enhancement of water's physical and chemical activities represents a notable challenge. Here we report a practicable production of free-standing liquid water at room temperature with weak hydrogen-bonded structure naming Au nanoparticles (NPs)-treated (AuNT) water via treating by plasmon-induced hot electron transfer occurred on resonantly illuminated gold NPs (AuNPs). Compared to well-known untreated bulk water (deionized water), the prepared AuNT water exhibits many distinct activities in generally physical and chemical reactions, such as high solubilities to NaCl and O-2. Also, reducing interaction energy within water molecules provides lower overpotential and higher efficiency in electrolytic hydrogen production. In addition, these enhanced catalytic activities of AuNT water are tunable by mixing with deionized water. Also, most of these tunable activities are linearly proportional to its degree of nonhydrogen-bonded structure (DNHBS), which is derived from the O-H stretching in deconvoluted Raman spectrum.
机译:在界面相或密闭环境中具有明显氢键结构的水的有趣特性引起了广泛的关注。然而,水的这些独特性质仅在界面相和受限环境中发现,因此其应用受到限制。另外,对这些独特性质的定量评估与水的物理和化学活性的增强相关,这是一个显着的挑战。在这里,我们报告了一种可行的室温静置液态水的生产方法,该结构具有弱氢键结构,命名为金纳米颗粒(NPs)处理的(AuNT)水,通过共振激发金NPs(AuNPs)上的等离激元诱导的热电子转移进行处理)。与众所周知的未经处理的散装水(去离子水)相比,制得的AuNT水在一般的物理和化学反应中表现出许多独特的活性,例如对NaCl和O-2的高溶解度。而且,减少水分子内的相互作用能在电解氢生产中提供了较低的过电势和较高的效率。此外,通过与去离子水混合可以调节AuNT水的这些增强的催化活性。同样,这些可调活动中的大多数与其非氢键结构(DNHBS)的程度成线性比例,该非氢键结构的程度来自反卷积拉曼光谱中的O-H拉伸。

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